Installation Instructions POINT I/O

3y ago
37 Views
2 Downloads
552.13 KB
12 Pages
Last View : 1m ago
Last Download : 3m ago
Upload by : Kian Swinton
Transcription

Installation InstructionsPOINT I/OUse this document to install and wire the following components of your POINT I/O system:Interface: 1734-ADN, -PDNBases: 1734-TB, -TBS, -TB3, -TB3S(RTB usage covered)Modules:1734-IA2, IB2, -IB4, -IJ, -IK, -IM2, -IV2, -IV4, -IE2C, -OA2,-OE2C, -OW2, -OB2E, -OB4E, -VHSC24, -VHSC5POINT I/O modules have no switches to set. You set module parameters with a software configuration tool. To obtain EDS files for use inconfiguration, go to: http://www.ab.com/networks/edsThis product installation information is also available at: http://www.ab.com/manuals/io/Installing the POINT I/O Adapter orCommunication InterfaceAfter positioning the 1734-FPD above theDIN rail, engage the interlocking side pieceswith the unit on the left.The 1734-ADN DeviceNet adapter and1734-PDN communication interface installonto a DeviceNet network.Installing the POINT I/O Wiring BaseThe wiring base consists of a base and aremovable terminal block (RTB). The1734-TB uses screw-clamp terminations; the1734-TBS uses spring-clamp terminations.Mech. KeyingSafetyEnd Cap6RTB RemovalHandleATTENTION Do not discard end cap. Useend cap to cover exposedconnections on the last terminalbase in the chassis. Failure todo so could result in injury orequipment damage.!If installing a replacement interface to anexisting system:1. Position the interface above the DIN rail.2. Slide the interface down allowing theinterlocking side pieces to engage theadjacent module.3. Press firmly to seat the interface on theDIN rail. The interface locking mechanismwill snap into place.4. To remove the interface from the DIN rail,pull up on the RTB removal handle toremove the terminal block.5. Use a small bladed screwdriver to rotatethe DIN rail locking screw to a verticalposition.6. This releases the locking mechanism.Then lift straight up to remove.Installing the Field Potential Dist.IMPORTANTThe 1734-FPD lookslike the 1734-PDN buthas no indicators.The 1734-FPD installs onto a DeviceNetnetwork using the same steps as the1734-PDN communication interface with oneadditional step included.MSta odtu ulesInstalling the Wiring Base1. Position wiring base vertically aboveinstalled units (interface, power supply orexisting module.2. Slide the wiring base down allowing theinterlocking side pieces to engage theadjacent module or interface.3. Press firmly to seat the wiring base on theDIN rail. The wiring base will snap intoplace.4. To remove the wiring base from the DINrail, remove the module, and use a smallbladed screwdriver to rotate the baselocking screw to a vertical position. Thisreleases the locking mechanism. Then liftstraight up to remove.Installing the Removable Terminal BlockA removable terminal block is supplied withyour terminal base. To remove, pull up onthe RTB removal handle.ATTENTION Do not pull on the installedwiring to remove a terminalblock. A shock hazard exists ifpower is applied to theterminal block.!This allows the base to be removed andreplaced as necessary without removing anyof the wiring. To reinsert the removableterminal block:1. Insert the end opposite the handle into thebase unit. This end has a curved sectionthat engages the wiring base.2. Rotate the terminal block into the wiringbase until it locks itself in place.0123Wiring Base1O 73B 44E1. Position the interface above the DIN rail.2. Press down firmly to install the interfaceon the DIN rail.3. The locking mechanism will lock theinterface to the DIN rail.4. Remove safety end cap. Slide it up toexpose backplane and power connections.I/O ModuleModuleLockingMechanismNSta etw1734-PDN AdaptorInstalling the I/O ModuleInterlockingSide PiecesD tus orkE:Interlockingside piecesRTBORemovableTerminalBlockRTBRemovalHandleTo remove a wiring base, you must removeany installed module, and remove theremovable terminal block (if wired). Thenfollow these steps:1. Remove the RTB (if wired).2. Turn the wiring base locking screw to avertical position to unlock the base fromthe DIN rail.3. Slide base up to release it from its matingunits.NModulelabelDIN Rail Locking Screw (orange)Removing a Wiring Base2S 4VOu ou DCtp rceutSystem Power IndicatorModule Power IndicatorDIN Rail Locking Screw(orange)DeviceNetconnector3. If an I/O module is installed, snap the RTBhandle into place on the module.4. Insert module straight down into wiringbase and press to secure. Module locksinto eyingDIN RailLocking Screw(orange)Wiring Base30880-MBThe module can be installed before, or afterbase installation. Make sure that the wiringbase is correctly keyed before installing themodule into the wiring base. In addition,make sure the wiring base locking screw ispositioned horizontal according to the base.1. Using a bladed screwdriver, rotate thekeyswitch on the wiring base clockwise tountil the number required for the type ofmodule being installed aligns with thenotch in the base.2. Make certain the DIN rail locking screw isin the horizontal position. (You cannotinsert the module if the lockingmechanism is unlocked.)3. Insert the module straight down into thewiring base and press to secure. Themodule will lock into place.

2POINT I/OWiring Diagrams1734-ADN0NCNCChassGndChassGnd212/24V eCAN - LowBare6ShieldVCAN - HighRed30880NC No ConnectionC CommonNCV dc3DeviceNetconnection5CCVV6 VChass GND Chassis GroundV Supply1Chass ChassGndGnd47VNC212/24V dcPowerCWhiteV dc07NC No ConnectionC CommonDaisy chainpower out tomodulesBlack-VBlueCAN - LowBareShieldWhiteCAN - HighRed VChass GND Chassis GroundV Supply1Do not connect 120/240V ac power to this supply. This dcsupply will be connected to the internal power bus.1734-FPD0NCNC21032Chass ChassGndGnd12/24V dcPower120/240V acPower54V dc1734-IA2CCVV76V acNCL2/NIn 02Prox46NCCVIn 0ProxProx67Prox46NCCCVV032In 0Prox5ProxProxIn 2467IV2 Source InputVProxIn 3CV5ProxProx41968V 12/24V dc, C CommonField power is supplied from power busPublication 1734-IN510B-EN-P - August 2000CCVV23NC2-Wire7Prox5L2/N L2/N63-Wire7L1L141968IM2 Input41967Ch 0 Channel 0Ch 1 Channel 1L2/N 220V ac Neutral L1 220V acNC No Connection1734-OA210325NC41Ch 0 Ch 1In 1In 31Ch 0 Ch 11734-IV41In 1NC0V 12/24V dc, C CommonField power is supplied from power bus1734-IV2In 0CNC No Connection1734-IM2IB4 Sink Input41966V 12/24V dc, C CommonField power is supplied from power bus2441960Ch 0 Channel 0Ch 1 Channel 1L2/N 120V ac Neutral L1 120V ac3In 2ProxL1IA2 InputIn 1233-Wire7L110IB2 Sink Input0L2/N L2/N6Daisychainpowerout tomodulesProxNC51734-IB45V3NC2-Wire5L2/N Neutral, L1 120/240V acThis supply will be connected tothe internal power bus.In 1C24L11NCProx761734-IB20L2/N1Ch 0 Ch 13L1V 12/24V dc, C Common Chass GND Chassis GroundThis supply will be connected to the internal power bus.01Chass ChassGndGnd4Daisychainpowerout tomodulesNCProxProxV 12/24V dc, C CommonField power is supplied from power busNC54LoadL2/N L2/N767IV4 Source Input3NCLoadL141969L1OA2 OutputCh 0 Channel 0 Ch 1 Channel 1 NC No ConnectionL2/N 120/220V ac ReturnL1 120/220V ac SupplyField power is supplied from the internal power bus.42014

POINT I/O3Wiring Diagrams1734-OB2E0Out0Out012Out CCVVCCCLoad23Chass ChassGnd Gnd45Load761734-OW2Out 10OutOut10A 1A2Out Out30B 1BLoad4CCVV742017CVVV 12/24V dc, C Common Chass GND Chassis GroundThis supply will be connected to the internal power bus.1734-IJ, & 1734-IKLoadAV 12/24V dc, C CommonThis supply will be connected tothe internal power bus.03BBnotZnotFE42019FE41975A, B, Z, Anot, Bnot,and Znot inputsFE Functional EarthFE1AnotBBnot RET 0 RET 1FEZZnot -Vaux -Vaux3 24761 0A25Z42018Anot471734-VHSC24, &1734-VHSC51025C67V 12/24V dc, C CommonChass GND Chassis GroundThis supply will be connected tothe internal power bus.In 1In 110V 12/24V dc, C CommonField power is supplied from power bus23Chass ChassGnd Gnd456C50 In420151734-OE2C0Out4Out11Out336V 12/24V dc, C CommonField power is supplied from power busOut 0Load02Out21734-IE2CIn 05 467 6357Out 0 Out 1 Vaux Vaux42444A, B, Z, Anot, Bnot, and Znot inputsFE Functional Earth-Vaux Auxiliary Supply Vaux Auxiliary SupplySpecificationsGeneral specifications - These specifications are shared by all components of the 1734 POINT I/O system.Specification:Environ. ConditionsOperating Temp.Storage Temp.Relative -20 to 55oC (-4 to 131oF)-40 to 85oC (-40 to 185oF)5 to 95% noncondensing30g peak acceleration, 11( 1)ms pulse width50g peak acceleration, 11( 1)ms pulse widthTested 5g @ 10-500Hz per IEC 68-2-6Terminal Base ScrewTorque1Specification:7 inch-pounds maxConductorsWire SizeCategoryAgency Certification(When Product orPackaging is Marked)Value:14 AWG (2.5mm2) - 22 AWG (0.25mm2)solid or stranded max(18 AWG max if connecting 2 wires to same terminal)3/64 inch (1.2mm) insulation max21CE marked for all applicable directivesC-Tick marked for all applicable actsCUL listed – Class I, Division 2Groups A, B, C and D certifiedCUL recognizedDeviceNet conformance testedUse this conductor category information for planning conductor routing as described in the system level installation manual.1734-TB, -TBS, -TB3 and -TB3S SpecificationsSpecification:Field Power BusVoltageCurrent1734-TB, -TBS, -TB3, -TB3S240V ac (1734-TB, -TBS)28.8V dc, 120/240V ac (1734-TB3, -TB3S)10A maxSpecification:1734-TB, -TBS, -TB3, -TB3SDimensions(HxWxL)65mm x 12mm x 133.4mm(2.560in x 0.472in x 5.250in) (1734-TB, -TBS)65mm x 12mm x 160mm(2.560in x 0.472in x 6.25in) (1734-TB3, -TB3S)Mass2.94 oz/83.35 grams (1734-TB)2.57 oz/73.86 grams (1734-TBS)3.44 oz/97.5 grams (1734-TB3)3.07 oz/87 grams (1734-TB3S)Publication 1734-IN510B-EN-P - August 2000

4POINT I/O1734-ADN Expansion I/O Capacity12 modules (Note: Total expansion up to 63 moduleswith 1734-EP24DC)Input OvervoltageProtectionReverse polarity protectedDeviceNet Communication 125K bit/s (500m maximum)Rate250K bit/s (250m maximum)500K bit/s (100m maximum)DeviceNet CableAllen-Bradley part number 1485C-P1-CxxxRefer to publication DN-2.5 for more informationModule LocationStarter module - left side of 1734 systemInput Voltage Rating24V dc nominalPower SupplyNote: In order to comply with CE Low VoltageDirectives (LVD), you must use a Safety Extra LowVoltage (SELV) or a Protected Extra Low Voltage (PELV)power supply to power this adapter.Indicators3 red/green status indicatorsAdapter statusDeviceNet statusPointBus status2 green power supply status indicators:System Power (PointBus 5V power)Field Power (24V from field supply)DeviceNet Input VoltageRange11-25V dc DeviceNet specificationDeviceNet PowerRequirements24V dc ( 4% 25V dc max) @ 30mA maximumPower Consumption8.1W maximum @ 28.8V dcIsolation Voltage1250V rms/V acPower Dissipation2.8W maximum @ 28.8VThermal Dissipation9.5 BTU/hr maximum @ 28.8V dcField Power BusNominal VoltageSupply Voltage Range24V dc10-28.8V dc range,Dimensions Inches(Millimeters)3.0H x 2.16W x 5.25L(76.2H x 54.9W x 133.4L)Mass9.0 oz/255 gramsField Wiring TerminationsPower Supply0 - No Connection2 - Chassis Ground4 - Common6 - SupplySupply CurrentField Wiring TerminationsDeviceNet10A maximum1 - Black Wire2 - Blue Wire3 - Bare Wire4 - White Wire5 - Red WireVCAN LowShieldCAN High V1 - No Connection3 - Chassis Ground5 - Common7 - SupplyPower Supply SpecificationsPower SupplyNote: In order to comply with CE Low VoltageDirectives (LVD), you must use a Safety Extra LowVoltage (SELV) or a Protected Extra Low Voltage (PELV)power supply to power this adapter.InterruptionOutput voltage will stay within specifications wheninput drops out for 10ms at 10V with maximum load.Input Voltage Rating24V dc nominal10-28.8V dc rangeField Side PowerRequirements24V dc ( 20% 28.8V dc maximum) @ 400mAmaximumInrush Current6A maximum for 10msPointBus Output Current1A maximum @ 5V dc 5% (4.75 - 5.25)Input Overvoltage ProtectionReverse polarity protectedValue:1734-PDN nsion I/O Capacity12 modulesModule LocationStarter module - left side of 1734 systemCommunication Rate125K bits/s (500m max)250K bits/s (250m max)512K bits/s (100m max)Indicators2 green power supply status indicatorsSystem power (PointBus 5V power)DeviceNet power (24V from DeviceNet)DeviceNet Power Req.24V dc ( 4% 25V dc max @ 400mA maxDimensions (HxWxL)76.2mm x 25.4mm x 133.4mm (3.0in x 1.0in x 5.25in)DeviceNet CableAllen-Bradley PN 1485C-P1-CxxxRefer to publication DN-2.5Input OvervoltageProtectionReverse polarity protectedPower SupplyNote: In order to comply with CE Low VoltageDirectives (LVD), you must use a Safety Extra LowVoltage (SELV) or a Protected Extra Low Voltage (PELV)power supply to power this interface.Field Power BusVoltageField WiringPower Supply0 - No connection1 - No connection2 - Ground3 - GroundField Wiring TerminationsDeviceNet1 - Black -V2 - Blue CAN Low3 - Bare DrainInput Voltage Rating24V dc nominalPower Dissipation1.2W max @ 25VInput Voltage Range11-25V dc DeviceNet specificationThermal Dissipation4.1 BTU/hr max @ 25V dc4 - Common5 - Common6 - Supply7 - SupplyPublication 1734-IN510B-EN-P - August 2000Current10V to 28.8V dc,120V ac or 240V ac10A max4 - White CAN High5 - Red V

POINT I/OSpecificationValue:SpecificationValue:Inrush Current6A for 5msPower Consumption7.0W max @ 25V dcPointbus Output Current1A maximum @ 5V dc 5% (4.75-5.25)Mass4.56 oz/129.28 gramsIsolation Voltage1528V rms/V ac51734-FPD e:Pointbus Output CurrentPass throughIndicatorsNoneInput Current10A maxInrush Current10A maxModule LocationBetween I/O modules in 1734 systemBreaks power busDimensions(HxWxL)76.2mm x 25.4mm x 133.4mm(3.00in x 1.00in x 5.25in)Field Power BusVoltageCurrentInput Voltage RatingPower Supply0 - No connection1 - No connection2 - Ground3 - Ground264V ac max12V dc, 24V dc/120V ac or 240V ac10A max12V dc, 24V dc, 120V ac, 240V ac nominalMass4.38 oz/124.17 grams4 - Common5 - Common6 - Supply7 - Supply1734-AC Input Modules (1734-IA21, -IM22)SpecificationValueSpecificationValueModule Location1734-TB, -TBS, -TB3 or -TB3S wiring base assemblyPointbus Current75mA maximum @ 5V dcPower Dissipation0.7W maximum @ 28.8V dcThermal Dissipation2.4 BTU/hr maximum @ 28.8V dcIsolation VoltageTested at 1250V rms/V for 1s (1734-IA2)Tested at 1500V rms/V for 1s (1734-IM2)Dimensions Inches(Millimeters)2.21H x 0.47W x 2.97L(56.0H x 12.0W x 75.5L)External AC Power Supply 120V ac, 60Hz nominal (1734-IA2)Voltage220V ac, 60Hz nominal (1734-IM2)External AC Power Supply 85-132V ac, 47-63Hz (1734-IA2)Voltage Range159-264V ac, 47-63Hz (1734-IM2)Field Wiring TerminationsMass1.09 oz/30.90 gramsOFF-State Voltage43V ac maximumON-State Current1734-IA23.7mA minimum6.9mA nominal @ 120V ac, 60HzNominal Input Impedance10.6kΩ (1734-IA2)22.3kΩ (1734-IM2)Indicators2 yellow input status, logic side1 green/red network status, logic side1 green/red module status, logic side0 - Input 02 - No Connection4 - L2N6 - L11 - Input 13 - No Connection5 - L2/N7 - L1Input Specifications (1734-IA2, -IM2)Number of Inputs2 (1 group of 2) non-isolated, sinkingON-State Voltage1734-IA265V ac minimum120V ac nominalOFF-State Current2.5mA maximum (1734-IA2)2.9mA maximum (1734-IM2)1734-IM2159V ac minimum220V ac nominalDelay Time3OFF to ON andON to OFF20ms hardware filter plus 1ms - 64ms digital filterprogrammable in increments of 1msKeyswitch Position81734-IM25.7mA minimum8.0mA nominal1 This module is IEC3 120V ac input compliant.2This module is IEC3 220V ac input compliant.Off/on delay is time from a valid output “on” signal to output energization. On/off delay is timefrom a valid output “off” signal to output deenergization.3Publication 1734-IN510B-EN-P - August 2000

6POINT I/O1734-AC Output Modules1 le Location1734-TB, TBS, TB3 or -TB3S wiring base assemblyPointbus Current75mA maximum @ 5V dcPower Dissipation0.8W maximum @ 28.8V dcThermal Dissipation2.7 BTU/hr maximum @ 28.8V dcIsolation VoltageTested at 1500V rms/V ac dc for 1sMass1.09 oz/30.9 gramsExternal AC Power Supply 120/220V ac, 60Hz nominalVoltageExternal AC Power Supply 85-264V ac, 47-63HzVoltage RangeDimensions Inches(Millimeters)2.21H x 0.47W x 2.97L(56.0H x 12.0W x 75.5L)Field Wiring Terminations0 - Output 02 - No Connection4 - L2N Return6 - L1Outputs per Module2 non-isolated, sourcingON-State Voltage Drop1.0V maximum @ 0.75AON-State Voltage Range74V ac minimum120/220V ac nominal264V ac maximumDelay Time2OFF to ONON to OFF1/2 cycle maximum1/2 cycle maximumON-State Current10mA minimum per channel750mA maximum per channelIndicators (field sideindication, logic driven)2 yellow status2 green/red statusOFF-State Leakage2.7mA maxOutput Current Rating1.5A (2 channels @ 0.75A each)Surge Current16A for 100ms, repeatable every 10sKeyswitch Position81 - Output 13 - No Connection5 - L2/N Return7 - L1Output Specifications11This module is IEC3 120V/220V ac Output CompliantOff/on delay is time from a valid output “on” signal to output energization. On/off delay is time from a valid output “off” signal to output deenergization.1734 DC Input Sink Modules1 (1734-IB2, -IB4)Specification:Value:Specification:Module Location1734-TB or -TBS terminal base unitPointbus Current75mA max @ 5V dcInputs/Module2 (1 group of 2) non-isolated, sinking (1734-IB2)4 (1 group of 4) non-isolated, sinking (1734-IB4)Input Filter Time2OFF to ON: 0-65ms (1ms default)ON to OFF: 0-65ms (1ms default)ON-State Voltage10V dc min24V dc nominal28.8 V dc maxON-State Current2mA min4mA nominal @ 24V dc5mA max1.5mA minOFF-State Voltage5V dc maxOFF-State CurrentInput Impedance5.3K Ω maxKeyswitch PositionIndicators2 yellow input status, logic side (1734-IB2)4 yellow input status, logic side (1734-IB4)1 green/red network status, logic side1 green/red module status, logic sidePower Dissipation0.7W max @ 28.8V dc (1734-IB2)0.9W max @ 28.8V dc (1734-IB4)Field PowerSupply VoltageVoltage Range24V dc nominal10-28.8V dcDimensions (HxWxL)56mm x 12mm x 75.5mm (2.206in x 0.472in x 2.97in)121734-IB2 and -IB4 specifications are IEC 1 24V dc input compliantInput OFF to ON, and ON to OFF, filter time is the time from a valid input signal to recognition by the module.Publication 1734-IN510B-EN-P - August 2000Power SupplyValue:10 - Input 06 - Supply1 - Input 17 - Supply2 - No Conn. (1734-IB2) - Input 2 1734-IB4)3 - No Conn. (1734-IB2) - Input 3 (1734-IB4)4 - Common (1734-IB2) - User Supply (1734-IB4)5 - Common (1734-IB2) - User Supply (1734-IB4)Thermal Dissipation2.4 BTU/hr max @ 28.8V dc (1734-IB2)3.1 BTU/hr max @ 28.8V dc (1734-IB2)Isolation Voltage1250V rms/V acMass1.09 oz/30.90 grams - (1734-IB2)1.12 oz/31.75 grams - (1734-IB4)

POINT I/O71734 DC Input Source Modules1 (1734-IV2, -IV4,)Specification:Value:Specification:Module Location1734-TB or -TBS terminal base unitPointbus CurrentValue:75mA max @ 5V dcInputs/Module2 (1 group of 2) non-isolated, sourcing (1734-IV2)4 (1 group of 4) non-isolated, sourcing (1734-IV4)Input Filter Time2OFF to ON: 0-65ms (1ms default)ON to OFF: 0-65ms (1ms default)ON-State Voltage10V dc min24V dc nominal28.8 V dc maxON-State Current2mA min4mA nominal @ 24V dc5mA max1.5mA minOFF-State Voltage5V dc maxOFF-State CurrentInput Impedance5.3K Ω maxKeyswitch Position1Power Dissipation0.7W max @ 28.8V dc (1734-IV2)0.9W max @ 28.8V dc (1734-IV4)Thermal Dissipation2.4 BTU/hr max @ 28.8V dc (1734-IV2)3.1 BTU/hr max @ 28.8V dc (1734-IV4)Isolation Voltage1250V rms/V acField PowerSupply VoltageVoltage Range24V dc nominal10-28.8V dcIndicators2 yellow input status, logic side (1734-IV2)4 yellow input status, logic side (1734-IV4)1 green/red network status, logic side1 green/red module status, logic sideDimensions (HxWxL)56mm x 12mm x 75.5mm (2.206in x 0.472in x 2.97in)12Power Supply0 - Input 01 - Input 12 - No Conn. (1734-IV2)Input 2 (1734-IV4)3 - No Conn. (1734-IV2)Inpu

Installing the Wiring Base 1.Position wiring base vertically above installed units (interface, power supply or existing module. 2.Slide the wiring base down allowing the interlocking side pieces to engage the adjacent module or interface. 3.Press firmly to seat the wiring base on the DIN rail. The wiring base will snap into place. 4.

Related Documents:

Texts of Wow Rosh Hashana II 5780 - Congregation Shearith Israel, Atlanta Georgia Wow ׳ג ׳א:׳א תישארב (א) ׃ץרֶָֽאָּהָּ תאֵֵ֥וְּ םִימִַׁ֖שַָּה תאֵֵ֥ םיקִִ֑לֹאֱ ארָָּ֣ Îָּ תישִִׁ֖ארֵ Îְּ(ב) חַורְָּ֣ו ם

5.3. STAFInst Uninstall 6. Platform Installation Notes 6.1. Linux installation 6.2. AIX installation 6.3. HP-UX IA64 64-bit installation 6.4. IBM i 32-bit (previously known as i5/OS or OS/400) installation 6.5. z/OS installation 6.6. FreeBSD installation 6.7. Mac OS X installation 6.8. Solaris installation 7. Environment Variable Settings 7.1.

One Point Perspective: City Drawing A Tutorial Engineering 1 Tatum. When completing this tutorial, you must use the following items: * White, unlined paper * A ruler or other straight-edge * A pencil. Begin by setting up your paper for a one-point perspective drawing. Draw a horizon line and a vanishing point. Draw two orthogonals (diagonal .File Size: 727KBPage Count: 41Explore furtherOne point perspective city: The step by step guide .pencildrawingschool.comHow to Draw One Point Perspective City Printable Drawing .www.drawingtutorials101.comOne Point Perspective Drawing Worksheets - Learny Kidslearnykids.comPerspective Drawing - An Easy Lesson in 1 Point .www.drawinghowtodraw.comThe Helpful Art Teacher: Draw a one point perspective city .thehelpfulartteacher.blogspot.comRecommended to you b

Applications - LHC collimation region Regions of high losses (e.g., Collimators, « ) ATLAS Regions with low losses (e.g., due to residual gas) The LHC Loss Regions Point 1 Point 2 Point 3.2 Point 3.3 Point 4 Point 5 Point 6 Point 7 Point 8 ALICE LHCb Momentun Cleaning RF CMS LHC Dump Betatron Cleaning FLUKA geometry visualized with SimpleGeo .

Applications -LHC collimation region Regions of high losses (e.g., Collimators,« ) ATLAS Regions with low losses (e.g., due to residual gas) The LHC Loss Regions Point 1 Point 2 Point 3.2 Point 3.3 Point 4 Point 5 Point 6 Point 7 Point 8 ALICE LHCb Momentun Cleaning RF CMS LHC Dump Betatron Cleaning FLUKA geometry visualized with flair .

Applications -LHC collimation region Regions of high losses (e.g. , Collimators, « ) ATLAS Regions with low losses (e.g. , due to residual gas) The LHC Loss Regions Point 1 Point 2 Point 3.2 Point 3.3 Point 4 Point 5 Point 6 Point 7 Point 8 ALICE LHCb Momentun Cleaning RF CMS LHC Dump Betatron Cleaning FLUKA geometry visualized with .

B. Variasi Pinch Point dan Approach Point Berdasarkan gambar 4 dapat dilihat hubungan antara perubahan pinch point dan approach point terhadap Power Output yang dihasilkan. Untuk pinch point, semakin kecil nilainya maka akan menghasilkan power output yang lebih tinggi. Begitu pula pada approach point. Hal tersebut dapat

Hybrid Bearing temperature rose by only about 10 deg. C and stayed almost constant throughout the test. stable Point A Point B Point C Point D Point B Point A Point C Rubber Bearing 1 2 3 Test stopped. Point D Water Temp. 32 90 80 70) 60 50 40 30 20 ( PTFE/Rubber Hybrid Bearing 10Test Time (min.) 20 60 Test Time (min.) ( ) 20 30 40 50